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A comprehensive review of microbial electrochemical systems as a platform technology.

机译:作为平台技术的微生物电化学系统的全面综述。

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摘要

Microbial electrochemical systems (MESs) use microorganisms to covert the chemical energy stored in biodegradable materials to direct electric current and chemicals. Compared to traditional treatment-focused, energy-intensive environmental technologies, this emerging technology offers a new and transformative solution for integrated waste treatment and energy and resource recovery, because it offers a flexible platform for both oxidation and reduction reaction oriented processes. All MESs share one common principle in the anode chamber, in which biodegradable substrates, such as waste materials, are oxidized and generate electrical current. In contrast, a great variety of applications have been developed by utilizing this in situ current, such as direct power generation (microbial fuel cells, MFCs), chemical production (microbial electrolysis cells, MECs; microbial electrosynthesis, MES), or water desalination (microbial desalination cells, MDCs). Different from previous reviews that either focus on one function or a specific application aspect, this article provides a comprehensive and quantitative review of all the different functions or system constructions with different acronyms developed so far from the MES platform and summarizes nearly 50 corresponding systems to date. It also provides discussions on the future development of this promising yet early-stage technology.Digital Object Identifier http://dx.doi.org/10.1016/j.biotechadv.2013.10.001
机译:微生物电化学系统(MES)使用微生物来掩盖存储在可生物降解材料中的化学能,以引导电流和化学物质。与传统的以处理为重点的能源密集型环境技术相比,这项新兴技术为集成的废物处理以及能源和资源回收提供了新的变革性解决方案,因为它为面向氧化和还原反应的工艺提供了灵活的平台。所有MES在阳极室中都有一个共同的原理,在该原理中,可降解材料(例如废料)被氧化并产生电流。相比之下,通过利用这种原位电流已经开发了多种应用,例如直接发电(微生物燃料电池,MFC),化学生产(微生物电解池,MEC;微生物电合成,MES)或水脱盐(微生物脱盐细胞(MDC)。与以前针对功能或特定应用方面的评论不同,本文提供了迄今为止从MES平台开发的所有不同功能或系统构造(具有不同的首字母缩写)的全面定量评论,并总结了迄今为止的近50种相应系统。它还提供了有关这一有前途但仍处于早期阶段的技术的未来发展的讨论。数字对象标识符http://dx.doi.org/10.1016/j.biotechadv.2013.10.001

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